RS PRO, 33Ω 50W Wire Wound Chassis Mount Resistor ±5%

RS Stock No.: 131-1292Brand: RS PRO
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Technical Document

Specifications

Brand

RS Pro

Resistance

33Ω

Power Rating

50W

Package/Case

Aluminium Housed

Tolerance

±5%

Technology

Wire Wound

Termination Style

Axial

Maximum Operating Temperature

+200°C

Minimum Temperature Coefficient

-100ppm/°C

Maximum Temperature Coefficient

+100ppm/°C

Dimensions

72.5 x 29.7 x 14.8mm

Overall Width

29.7mm

Overall Height

14.8mm

Overall Length

72.5mm

Country of Origin

United Kingdom

Product details

RS Pro 50 W Aluminium Housed Wirewound Resistors

RS Pro 50 W Aluminium housed power resistors which are manufactured to be compliant with the requirements of a MIL 18546, IEC 115 and are RoHS compliant.

Features

Compact size for Power rating
High Power to volume
Wound to maximise High Pulse Capability

Applications

Designed for direct heatsink mounting with thermal compound to achieve maximum performance.

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EGP 314.58

Each (In a Pack of 5) (ex VAT)

RS PRO, 33Ω 50W Wire Wound Chassis Mount Resistor ±5%

EGP 314.58

Each (In a Pack of 5) (ex VAT)

RS PRO, 33Ω 50W Wire Wound Chassis Mount Resistor ±5%
Stock information temporarily unavailable.

Technical Document

Specifications

Brand

RS Pro

Resistance

33Ω

Power Rating

50W

Package/Case

Aluminium Housed

Tolerance

±5%

Technology

Wire Wound

Termination Style

Axial

Maximum Operating Temperature

+200°C

Minimum Temperature Coefficient

-100ppm/°C

Maximum Temperature Coefficient

+100ppm/°C

Dimensions

72.5 x 29.7 x 14.8mm

Overall Width

29.7mm

Overall Height

14.8mm

Overall Length

72.5mm

Country of Origin

United Kingdom

Product details

RS Pro 50 W Aluminium Housed Wirewound Resistors

RS Pro 50 W Aluminium housed power resistors which are manufactured to be compliant with the requirements of a MIL 18546, IEC 115 and are RoHS compliant.

Features

Compact size for Power rating
High Power to volume
Wound to maximise High Pulse Capability

Applications

Designed for direct heatsink mounting with thermal compound to achieve maximum performance.